Literature DB >> 26004915

A Top-Down Cortical Circuit for Accurate Sensory Perception.

Satoshi Manita1, Takayuki Suzuki1, Chihiro Homma1, Takashi Matsumoto1, Maya Odagawa1, Kazuyuki Yamada1, Keisuke Ota2, Chie Matsubara1, Ayumu Inutsuka3, Masaaki Sato4, Masamichi Ohkura5, Akihiro Yamanaka3, Yuchio Yanagawa6, Junichi Nakai5, Yasunori Hayashi7, Matthew E Larkum8, Masanori Murayama9.   

Abstract

A fundamental issue in cortical processing of sensory information is whether top-down control circuits from higher brain areas to primary sensory areas not only modulate but actively engage in perception. Here, we report the identification of a neural circuit for top-down control in the mouse somatosensory system. The circuit consisted of a long-range reciprocal projection between M2 secondary motor cortex and S1 primary somatosensory cortex. In vivo physiological recordings revealed that sensory stimulation induced sequential S1 to M2 followed by M2 to S1 neural activity. The top-down projection from M2 to S1 initiated dendritic spikes and persistent firing of S1 layer 5 (L5) neurons. Optogenetic inhibition of M2 input to S1 decreased L5 firing and the accurate perception of tactile surfaces. These findings demonstrate that recurrent input to sensory areas is essential for accurate perception and provide a physiological model for one type of top-down control circuit.
Copyright © 2015 Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 26004915     DOI: 10.1016/j.neuron.2015.05.006

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   17.173


  129 in total

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10.  Mapping GPR88-Venus illuminates a novel role for GPR88 in sensory processing.

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